IP Library › Granted Patent US 12,605,757
Granted Patent B2
US 12,605,757 · App. 17/907,382 · Granted Apr 21, 2026

Manufacturing method of battery case

Inventors: Minoru Fukunaga (Sagamihara, JP); Kazuhiro Saeki (Sagamihara, JP)
Assignee: DAIWA CAN COMPANY
B21D51/16H01M50/103
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Quick Facts
Patent No.
US 12,605,757
App. No.
17/907,382
Granted
Apr 21, 2026
Kind
B2
Abstract

A manufacturing method of a battery case having a rectangular transverse cross-section in which an intermediate product having an elliptical transverse cross-section is shaped into a final product having a rectangular transverse cross-section by drawing and ironing the intermediate product multiple times to reduce a curvature radius of each corner and thicknesses of side walls formed on both sides of the corner. A difference between an ironing rate of the side wall formed on one side of the corner and an ironing rate of the side wall formed on the other side of the corner is reduced less than a predetermined difference, after the curvature radius of the corner between the side walls has been reduced shorter than a predetermined radius during the process of shaping the intermediate product into the final product.

Claims (7)

1 . A manufacturing method of a battery case having an open box-shaped case body and a sealing plate closing an opening of the case body, comprising:

forming a bottomed intermediate product having an elliptical or oval transverse cross-section by drawing and ironing a blank prepared in advance; and

shaping the intermediate product into the case body as a final product having a rectangular transverse cross-section enclosed by four side walls by drawing and ironing the intermediate product multiple times to reduce a curvature radius of each corner and thicknesses of the side walls formed on both sides of the corner, a first two of the four side walls being longer side walls and a second two of the four side walls being shorter side walls, and both sides of each corner including one of the longer side walls and one of the shorter side walls,

wherein the side walls formed on both sides of the corner are ironed at predetermined rates set individually to reduce thicknesses of the shorter side wall formed on the one side of the corner and the longer side wall formed on the other side of the corner to target thicknesses, in a situation where the curvature radius of the corner between the side walls is equal to 3 mm or longer during the process of shaping the intermediate product into the final product, the predetermined rate for the longer side wall being different than the predetermined rate for the shorter side wall, and

wherein when the curvature radius of the corner between the side walls has been reduced to 3 mm or shorter during the process of shaping the intermediate product into the final product, a difference between the predetermined ironing rate of the shorter side wall formed on one side of the corner and the predetermined ironing rate of the longer side wall formed on the other side of the corner is reduced to 1% or less.

2 . The manufacturing method of the battery case as claimed in claim 1 , wherein the shorter side wall formed on the one side of the corner and the longer side wall formed on the other side of the corner are ironed such that a difference between heights of the side walls is reduced to a predetermined value or less, in a situation where the curvature radius of the corner between the side walls is 3 mm or longer.

3 . The manufacturing method of the battery case as claimed in claim 2 , wherein the predetermined value is set such that the shorter side wall formed on the one side of the corner and the longer side wall formed on the other side of the corner are expanded in same amounts or rates when being ironed after the curvature radius of the corner between the side walls is reduced to 3 mm or shorter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2022
From: FUKUNAGA, MINORU; SAEKI, KAZUHIRO
To: DAIWA CAN COMPANY
Reel/Frame 061218/0196 →
Priority Claims (1)
JP 2020-058721 · Mar 27, 2020 · national
Continuity (1)
Related Publication 20230124823A1 · Apr 20, 2023
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